Exotic Quantum States Made From Light
August 17, 2017 | University of BonnEstimated reading time: 2 minutes
Light particles (photons) occur as tiny, indivisible portions. Many thousands of these light portions can be merged to form a single super-photon if they are sufficiently concentrated and cooled. The individual particles merge with each other, making them indistinguishable. Researchers call this a photonic Bose-Einstein condensate. It has long been known that normal atoms form such condensates.
The artist's rendering shows how potential wells are created for the light in the microresonator through heating with an external laser beam (green). (Image: David Dung, Universität Bonn)
Prof. Martin Weitz from the Institute of Applied Physics at the University of Bonn attracted attention among experts in 2010 when he produced a Bose-Einstein condensate from photons for the first time.
In his latest study ("Variable potentials for thermalized light and coupled condensates"), Prof. Weitz' team experimented with this kind of super-photon. In the experimental setup, a laser beam was rapidly bounced back and forth between two mirrors. In between was a pigment that cooled the laser light to such an extent that a super-photon was created from the individual light portions.
"The special thing is that we have built a kind of optical well in various forms, into which the Bose-Einstein condensate was able to flow," reports Weitz.
how potential wells are created for the light in the microresonator through heating with an external laser beam
A polymer varies the light path
The team of researchers used a trick here: It mixed a polymer into the pigment between the mirrors, which changed its refractive index depending on the temperature. The route between the mirrors for the light thus changed so that longer light wavelengths passed between the mirrors when heated. The extent of the light path between the mirrors could be varied, in that the polymer could be warmed via a very thin heating layer.
"With the help of various temperature patterns, we were able to create different optical dents," explains Weitz. The geometry of the mirror only appeared to warp, while the refractive index of the polymer changed at certain points - however, this had the same effect as a hollow shape. Part of the super-photon flowed into this apparent well. In this way, the researchers were able to use their apparatus to create different, very low-loss patterns that captured the photonic Bose-Einstein condensate.
Precursor of quantum circuits
The team of researchers investigated in detail the formation of two neighboring wells, controlled via the temperature pattern of the polymer. When the light in both optical hollows remained at a similar energy level, the super-photon flowed from one well into the neighboring one.
"This was a precursor of optical quantum circuits," highlighted the physicist at the University of Bonn. "Perhaps even complex arrangements, for which quantum entanglement occurs in interaction with a possible photon interaction in suitable materials, can be produced with this experimental setup."
This would, in turn, be the prerequisite for a new technique for quantum communication and quantum computers. "But that's still a long way off," says Weitz. The findings by the research team could also conceivably be used to further develop lasers - for instance for highly precise welding work.
Suggested Items
Dymax Will Exhibit Light-Cure Solutions for Today’s Electronics at IPC APEX 2024
03/26/2024 | DymaxDymax, a leading manufacturer of rapid and light-curing materials and equipment, will exhibit at the IPC APEX EXPO 2024 in Anaheim, CA, April 9-11.
NASA Uses ORNL Supercomputers to Plan Smooth Landing on Mars
03/26/2024 | Oak Ridge National LaboratoryA U.S. mission to land astronauts on the surface of Mars will be unlike any other extraterrestrial landing ever undertaken by NASA.
New Features Boost Speed, Accuracy, Ease of Use for YAMAHA AOI System
03/18/2024 | Yamaha Robotics SMT SectionYamaha Robotics has announced Performance-boosting upgrades for the YAMAHA YRi-V 3D AOI system. These upgrades include faster board handling, multi-component alignment checking, and enhanced LED coplanarity measurement, among others.
Anda Technologies to Feature Large Platform Conformal Coating and Plasma Treatment Systems at 2024 IPC APEX EXPO
03/15/2024 | Anda TechnologiesAnda Technologies, a leading provider of fluid application and custom automated manufacturing equipment, will showcase its latest innovations at Booth 1038 during the 2024 IPC APEX EXPO.
Recon Technology Secures $3 Million in Contracts with Newly Developed Customer for Electronic Components and Materials
03/11/2024 | PRNewswireRecon Technology Ltd, a China-based provider of oilfield services and low-carbon energy services, announced two recently awarded bids from a newly developed oilfield-industry customer for the supply of electronic components and materials used in oilfield production.